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Internal Solvation Effects on the Reactivity of .alpha.,.omega.-Diphenylalkanes toward Me3C+ Ions
Author(s) -
Maria Elisa Crestoni,
Simonetta Fornarini,
Dietmar Kuck
Publication year - 1995
Publication title -
the journal of physical chemistry
Language(s) - English
Resource type - Journals
eISSN - 1541-5740
pISSN - 0022-3654
DOI - 10.1021/j100010a026
Subject(s) - citation , altmetrics , omega , reactivity (psychology) , solvation , computer science , alpha (finance) , social media , world wide web , physics , psychology , ion , medicine , clinical psychology , quantum mechanics , construct validity , alternative medicine , pathology , psychometrics
The reactivity of alfa,omega-diphenylalkanes toward Me3C+ ions has been investigated with the radiolytic\udtechnique at 720 Torr, at temperatures of 47 and 120 “C. The intramolecular isotopic discrimination of\udMe3C+, favoring attack at the unlabeled ring of C6H5(CH2)2C6D5 by a factor of 1.5 at 120 “C, contrasts with\udthe lack of intermolecular isotopic discrimination. Competition experiments show an appreciably higher reactivity of Ph(CH2),Ph (n = 2-4) relative\udto toluene and diphenylmethane (DPM). The lack of substrate selectivity, in contrast to an intramolecular\uddiscrimination in the tert-butylation of (3-CH3C6H4)-(CH2)2-C6H5 of a factor of 2, together with the related\udvariation of kinetic isotope effects, points out the kinetic role of the collision complex from Me3C+ and\uddiphenylalkanes. The additional (“spectator”) ring of the higher homologues Ph(CH2)nPh (n = 2-4) prevents\uddissociation of the complex, making its formation irreversible and causing tert-butylation to occur at the encounter rate,\udin contrast to DPM, whose second ring appears essentially inert. Experiments involving substitution by Me3Si+\udat 120 “C show that this electrophile attacks preferably the unlabeled ring of C6H5-(CH2)2-C6D5 by a factor of\ud1.5. In this\udcase, the isotopic discrimination is traced to the competition between desilylation and deprotonation of\udintermediate ipso-silylated arenium ions

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